Showing 21 - 40 results of 5,013 for search '(( decrease wear resistance ) OR ( decrease ((metal resistance) OR (high resistance)) ))', query time: 0.76s Refine Results
  1. 21
  2. 22
  3. 23
  4. 24
  5. 25
  6. 26
  7. 27
  8. 28
  9. 29
  10. 30

    The influence of Cu content on high temperature corrosion behavior of heat - resistant molten salt steel by Hong Li (20183)

    Published 2019
    “…The structure of the oxide film consists of various protective oxide films; with increasing of Cu content, the high-temperature corrosion resistance of heat-resistant steel was improved and the thickness of the corrosion layer was decreased which led to improving the bonding strength between the inner layer and the matrix. …”
  11. 31

    Characterization and Comparative Analysis of Corrosion Resistance of 4 High Manganese Steels Models in Aqueous Solution of NaCl by Mauro Andres Cerra Florez (8108975)

    Published 2019
    “…The obtained results showed a relationship between the increases of the manganese content with: formation of twins that help their hardening, as well as the decrease of their corrosion resistance; the steel with less amount of this element had a more noble behavior. …”
  12. 32
  13. 33
  14. 34
  15. 35
  16. 36
  17. 37

    Data_Sheet_1_Effect of Endosymbiotic Bacteria on Fungal Resistance Toward Heavy Metals.docx by Simone Lupini (12243281)

    Published 2022
    “…From these results, we concluded that bacterial endosymbionts of fungi can play a fundamental role in fungal resistance to metals. This study provides the first step toward a greater understanding of symbiotic interactions between bacteria and fungi in relation to metal tolerance and remediation.…”
  18. 38

    Effect of Sn Addition in the Microstructure Refinement and Corrosion Resistance of Cu-Zr-Al-Ag Alloy by Amanda Ventura Castilho (6572528)

    Published 2019
    “…Polarization curves showed a higher passivation current in the Sn containing sample, suggesting a decrease in corrosion resistance.</p></div>…”
  19. 39
  20. 40